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Relaxation of mask design for single-shot phase imaging with a coded aperture

机译:宽松的掩模设计,用于单光相位成像和编码光圈

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摘要

We present a method of relaxing the conditions of mask design in single-shot phase imaging with a coded aperture (SPICA), for extending the applications of SPICA. SPICA, based on compressive sensing, enables the acquisition of wide, high-resolution optical complex fields in a single exposure without the need for reference light. In our previous work on SPICA, a coded aperture (CA) was implemented with only amplitude modulation, resulting in a low transmission factor and low light efficiency because of the need for an independent phase retrieval process in the reconstruction. We attempt to alleviate these limitations by adapting a reconstruction algorithm to directly associate the phase-retrieval process with a sparsity-based reconstruction. With this approach, it is possible to realize SPICA with an amplitude-modulation-based CA having a high transmission factor, a phase-modulation-based CA, and a complex-amplitude (amplitude and phase)-modulation-based CA. We verified the effectiveness of these relaxed CA designs numerically and experimentally. (C) 2016 Optical Society of America
机译:我们提出了一种在具有编码孔径(SPICA)的单发相位成像中放宽掩模设计条件的方法,以扩展SPICA的应用。基于压缩感测的SPICA可以在单次曝光中获取宽的高分辨率光学复杂场,而无需参考光。在我们之前关于SPICA的工作中,仅通过幅度调制实现了编码孔径(CA),由于重建中需要独立的相位恢复过程,因此导致传输系数低和光效率低。我们试图通过改编重构算法来直接将相位检索过程与基于稀疏性的重构相关联来减轻这些限制。通过这种方法,可以实现具有高传输因数的基于幅度调制的CA,基于相位调制的CA和基于复幅度(振幅和相位)调制的CA的SPICA。我们通过数值和实验验证了这些宽松的CA设计的有效性。 (C)2016美国眼镜学会

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